NP08 ADVANCEDENERGY | Alldatasheet

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©2024 Advanced Energy Industries, Inc. ARTESYN CONFIGURABLE NeoPower Up to 4000 Watts Total Power Up to 4000 W Input Voltage 90 to 264 VAC 1-Phase # of Outputs Up to 8 AT A GLANCEAdvanced Energy’s NeoPower (NP) configurable AC-DC power supplies provide high power density as either a programmable voltage or current source. The NeoPower configurable will feature an intuitive software interface and user configurable modules to enable fast prototypes. Modules can be connected in series and parallel with the configurable buss bar system to enable 1,000's of output combinations. The NeoPower is certified for both industrial and medical safety approvals, including compliance to the SEMI F47 standard. The NeoPower supports digital communication with MODBUS RTU for control, monitoring and configuration. SPECIAL FEATURES  Short circuit protection  Over voltage protection (OVP)  Over current protection (OCP)  Over temperature protection (OTP)  Active power factor correction  Output on/off control  Fan speed control  Power good signal  Active current share  Remote voltage sense  Supports MODBus RTU digital communication. Supports PMBUS and CANOPEN with ConnectedPower dongle  Input to Output: 5000 VAC or

7000 VDC, 2 x MOPP

Input to Earth: 1800 VAC or 2500 VDC, 1 x MOPP Output to Earth: 1800 VAC or

2500 VDC, 1 x MOPP

 End user installable modules (no hi-pot or safety certifications required to install modules)  5-year manufacture's warranty SAFETY  IEC/EN 62368-1  UL 62368-1, CSA C22.2 No. 62368-1  IEC/EN 60601-1  ANSI/AAMI ES 60601-1 CAN/CSA-C22.2 No 60601-1  CE mark (LVD+RoHS)  CB certicates and report  CCC (CQC optional) NP08

2 advancedenergy.com NP ELECTRICAL SPECIFICATIONS Input Case Model NP08W1A Number of Slots 8 AC Input Range Low line 1-phase: 90 to 132 VAC; High line 1-phase: 180 to 264 VAC AC Input Frequency 47 to 440 Hz Turn-on Voltage 87 VAC +/- 2% Turn-off Voltage 81 VAC +/- 2% Max Power Low line: 2000 W; High line: 4000 W Max Inrush Current1 80 A Max Input Current 27 A Crest Factor 1.1 to 1.5 Power Factor 0.99 @ full load and nominal line Harmonic Distortion Meets EN 61000-3-2 Line Interruption Meets SEMI F47-0706, 53, 58, S14 at nominal input voltages and full load condition Input Leakage Current2 - Industrial < 2.5 mA Input Leakage Current2 - Medical BF Earth (normal condition) < 0.5 mA Earth (single fault condition) < 1.0 mA Touch/Patient (normal condition) < 0.1 mA Touch/Patient (single fault condition) < 0.5 mA Hold-up Time 20 ms minimum, additional holdover storage with optional HUP module 3 Ride-through Time 20 ms minimum, additional holdover storage with optional HUP module 3 Input Protection Internal fuse on all input lines (not user serviceable) Input Over Voltage Protection Up to 115% of nominal input without damage Isolation Input to Output: 5000 VAC or 7000 VDC, 2 x MOPP Input to Earth: 1800 VAC or 2500 VDC, 1x MOPP Efficiency4 90% typical (Contact support for for efficiency curve for a configured model) Standby Output 5 V/2 A Note 1 - Any additional inrush current surges or spikes in the form of AC cycles or multiple AC cycles greater than 10 ms, and less than 150 ms, must not exceed 25 A peak. Short pulses (<300 μS) caused by X caps are not considered. Note 2 - The specification is not applicable for 400 Hz (+/-10%) input frequency operation. Note 3 - Consult with AE for the availability of the HUP module. Note 4 - Tested with 1-phase NP08W1A case at 240 VAC input and populated with 8 x 48 V modules . 5 V standby at no load.

advancedenergy.com 3 NP ELECTRICAL SPECIFICATIONS

1 Slot Single Output Modules

Model 1S 0005M 1S 0012M 1S 0015M 1S 0024M 1S 0048M Voltage Source (VS) Mode Nominal Output Voltage 5 V 12 V 15 V 24 V 48 V Output Current Range 0 to 56 A 0 to 41.6 A 0 to 33.3 A 0 to 20.8 A 0 to 10.4 A Current Source (CS) Mode Rated Output Current 56 A 33.3 A 26.6 A 16.6 A 8.3 A Max Output Power 280 W 400 W 400 W 400 W 400 W Max Capacitance for Dynamic Loading 820 μF 470 μF 220 μF 220 μF 220 μF Module Connected in Parallel Up to 8 modules with active current sharing error of +/-5% from half load to full load. Remote Sense All outputs have remote sense capability. Compensate for up to 2% of Vnom drop in each load line. Under-voltage Protection (UVP) Capable of detecting an under-voltage condition in which the output voltage does not achieve its setpoint voltage. Over-voltage Protection (OVP) 110% to 120% of Vout-target, latch off mode. Cleared by input voltage reset or clear faults digital register. Over-current Protection (OCP) Latch vs foldback Short Circuit Protection (SCP) All outputs protected from continuous output shorted condition (no damage or reliability issues).

4 advancedenergy.com NP ELECTRICAL SPECIFICATIONS Output - Adjustable Voltage Source via Digital Command via Analog Signal Programming Accuracy +/- 1% of Vset or Vnom, whichever is greater +/- 1.5% of Vset or Vnom, whichever is greater Monitoring Accuracy +/- (1% of Vset + 1% of Vnom) +/- (1.5% of Vset + 1.5% of Vnom) Line Regulation +/-1% of Vnom Load Regulation +/-1% of Vnom Ripple & Noise @ 20 MHz BW (Pk-to-Pk) 1% of Vset or Vnom, whichever is greater Measured with a 0.1 μF ceramic capacitor in parallel with a 10 μF tantalum or low ESR E-cap. Ripple & Noise @ 20 MHz BW (RMS) 0.1% of Vset or Vnom or 10 mV, whichever is greater Measured with a 0.1 μF ceramic capacitor in parallel with a 10 μF tantalum or low ESR E-cap. Common Mode Ripple/Noise @ 10 Hz to 70 MHz BW 0.1% of Vset or Vnom or 10 mV, whichever is greater Across a 100 Ohm resistor between both DC outputs, including ground, at the DC power connector and chassis ground. Use FET probe such as Tektronix model P6046 or equivalent. Transient Loading Minimum dynamic load: 20% of rated output current Maximum dynamic loading step: 50% step load @ 1 A/μS Voltage deviation: +/- 7.5% of Vset or Vnom which is greater (for 5V output models); +/- 5% of Vset or Vnom (for other module variants) Turn-on Output Voltage Overshoot +7.5% of Vset or Vnom, whichever is greater (5V output models) +5% of Vset or Vnom, whichever is greater (other output models) Turn-off Output Voltage Undershoot -7.5% of Vset or Vnom, whichever is greater (5V output models) -5% of Vset or Vnom, whichever is greater (other output models) Adjustable Output Voltage Risetime 20 to 100 ms Output - Adjustable Current Source via Digital Command via Analog Signal Programming Accuracy +/- 1% of Iset or Irated, whichever is greater +/- 2% of Iset or Irated, whichever is greater Monitoring Accuracy +/- (1% of Iset + 1% of Irated) +/- (2% of Iset + 2% of Irated) Line Regulation +/- 2% of Irated Load Regulation +/- 2% of Irated Ripple & Noise @ 20 MHz BW (RMS) +/- (1% of Iset + 1% of Irated) Measured with a 0.1 μF ceramic capacitor in parallel with a 10 μF tantalum or low ESR E-cap. Turn-on Output Voltage Overshoot +5% of Iset or Irated, whichever is greater Turn-off Output Voltage Undershoot -5% of Iset or Irated, whichever is greater Adjustable Output Current Risetime 20 to 100ms

advancedenergy.com 5 NP ENVIRONMENTAL SPECIFICATIONS Operating Temperature 0°C to +50°C ambient: full performance; -20°C startup; 50°C to +70°C ambient: output power derated: 70°C @ sea level - 85% derated output power 50°C @ 3000 meters above sea level - 90% derated output power 70°C @ 3000 meters above sea level - 75% derated output power Storage Temperature -40°C to +85°C Operating Humidity 20% to 90% non condensing Storage Humidity 10% to 95% non condensing Operating Altitude Up to 3,000 meters above sea level Storage Altitude Up to 9,144 meters above sea level Vibration Operating Sinusoidal Vibration MIL-STD-810G, method 514.6, procedure I, category 4-11: 10 to 2000 Hz 6.0 Grms 30 mins three axis (Non Operating ); 10 to 500 Hz 4.22 Grms 30 mins three axis (operating); 1G 5 to 500 Hz sine vib 1 oct/min (Sine Vib) Operating Random Vibration: IPC-9592B Class 1 Non-Operating Vibration (Packaged): IPC-9592B Class 1; MIL-STD-810G, Method 514.6, Procedure 1, Category 7, Table 514.6C-VII General Exposure Shock MIL-STD-810G, method 516.6, Procedure I and II:

30 Grms 26ms square wave pulse (non operating)

40 Grms 6ms half sine pulse (operating)

Shipping and Handling NSTA for <100 lbs; MIL-STD-2073-1 >100 lbs Cooling and Audible Noise <65 dBA with 80% load @ 30°C at nominal input voltage with Smart Fan algorithm to be optimized based on module and case thermal sensors. When modules are inhibited via software control, the fan speed is reduced to minimum and acoustic noise is <46 dBA. < 80 dBA continuous for 24 hours Ingress Protection Fan Cooled, IP20 MTBF Calculated: 200,000 hours, Telcordia specifications @ 25ºC ambient at full load, nominal input line AC Demonstrated: > 500,000 hours Pollution Degree 2, with optional conformal coating RoHS Compliance Yes

6 advancedenergy.com NP

ORDERING INFORMATION

First - # of Slots Second - Type Third - Voltage Code Forth - Option Code Case Option Codes First - Parallel Code Second - Case Options Third - Configuration Parallel/ Series Code Separate multiple codes with "&" Software Code Communication Bus Modification Code NPXXYZ - XYZO - XY - XYZ - A - 0 - XXX XX = Number of Slots - Case Size 08 = 8 Slots Y = Input Voltage Range W = Wide range 90 to 264 VAC Z = 1 or 3 Phase Input 1 = Single phase X = Number of Slots for Module 1 = 1 slot, single O/P Y = Module Type (M)edical Z = Voltage Code(s) See table O = Option Codes: 0 = DVS, Module ON 1 = DCS, Module ON 2 = AVS, Module ON 3 = ACS, Module ON 4 = DVS, Module OFF 5 = DCS, Module OFF 6 = AVS, Module OFF 7 = ACS, Module OFF Z = Option defined in MOD-I X = Case Options 0 = No options 1 = Reverse air 2 = 3 = Global enable 4 = Fan idle with inhibit Z = See MOD-I Y = Configuration Code 0 = Shipped from AEI cases/modules C = AEI factory configured/tested V = Assembled by Value Added Reseller See Table A = Standard B = Non standard voltage 0 = Standard MODBUD RTU Z = See MOD Advanced Energy assigned code to track modification made from the standard design CC = Conformal coating RG = Ruggedized 2.5 in. NP Module NP Module NP Module NP Module NP Module NP05 5 in. NP Module NP Module NP Module NP Module NP Module NP Module NP Module NP Module NP08 8 in. Chassis Options 8 7 6 5 4 3 2 1

advancedenergy.com 7 NP Voltage Code Voltage Code Voltage Code Voltage Code

2 V A 6 V H 18 V O 42 V V

2.2 V B 8 V I 20 V P 48 V W

3 V C 10 V J 24 V Q 54 V X

3.3 V D 11 V K 28 V R 60 V Y

5 V E 12 V L 30 V S 190 V 19

5.2 V F 14 V M 33 V T - -

5.5 V G 15 V N 36 V U - -

Parallel and Series Connection Table Case Start Slot Start Slot Code #slots coonected across Parallel/Series Description NP08 1 1 2 P/S 1&2 NP08 2 2 2 P/S 2&3 NP08 3 3 2 P/S 3&4 NP08 4 4 2 P/S 4&5 NP08 5 5 2 P/S 5&6 NP08 6 6 2 P/S 6&7 NP08 7 7 2 P/S 7&8 NP08 1 1 3 P/S 1&2&3 NP08 2 2 3 P/S 2&3&4 NP08 3 3 3 P/S 3&4&5 NP08 4 4 3 P/S 4&5&6 NP08 5 5 3 P/S 5&6&7 NP08 6 6 3 P/S 6&7&8 NP08 1 1 4 P/S 1&2&3&4 NP08 2 2 4 P/S 2&3&4&5 NP08 3 3 4 P/S 3&4&5&6 NP08 4 4 4 P/S 4&5&6&7 NP08 5 5 4 P/S 5&6&7&8 NP08 1 1 5 P/S 1&2&3&4&5 NP08 2 2 5 P/S 2&3&4&5&6 NP08 3 3 5 P/S 3&4&5&6&7 NP08 4 4 5 P/S 4&5&6&7&8 NP08 1 1 6 P/S 1&2&3&4&5&6 NP08 2 2 6 P/S 2&3&4&5&6&7 NP08 3 3 6 P/S 3&4&5&6&7&8

8 advancedenergy.com NP Case Model Case Orderable Part Number Description Status NP08W1A 83-108-0001W 4000W Case, 1-Phase Released NP Series Specification Rev 0.3 Confidential Information An NDA with Artesyn Embedded Technologies must be signed before viewing Page 81 of 89

14.4 Mechanical Outline and Connectors

14.4.1 NP08W1A Case (units in mm)

14.4.2 1 Slot Single Output Modules (units in mm) Module Model Module Orderable Part Number Description Status 1S 0005M 83-011-0005M 1 Slot 5V Medical, 280W Released 1S 0012M 83-011-0012M 1 Slot 12V Medical, 400W Released 1S 0015M 83-011-0015M 1 Slot 15V Medical, 400W Released 1S 0024M 83-011-0024M 1 Slot 24V Medical, 400W Released 1S 0048M 83-011-0048M 1 Slot 48V Medical, 400W Released MECHANICAL DRAWINGS

1 Slot Single Output Modules (Unit: mm)

Maximum Module Weight: 0.5lbs (0.226kg)

advancedenergy.com 9 NP MECHANICAL DRAWINGS NP08W1A Case (Unit: mm) (Input, Signal Connector and LED Locations) Case Weight: 7lbs (3.2kg) 12111098765432 13 14 15 16 17 18 19 20 21 22 23 241 12111098765432 13 14 15 16 17 18 19 20 21 22 23 A01 A B C D E F G H J K L M N P Q R A B C D E F G H J K L M N P Q RCreated by Approved by Document type Dept. Technical reference Document status Title, Supplementary title Rev. Date of issue Lang. Sheet 1of 1 Drawn to Unless Stated Otherwise ISO STANDARDS General tolerances Units Scale ISO 2768-mK LENGTH: mm NTS Tolerancing ISO 8015 ANGLE: DEG Material Treatment SHEET REVISION HISTORY P/N SUFFIX REVISION ECO NO. REVISION DESCRIPTION DATE REVISED BY APPROVED BY -0000 AA FIRST RELEASE. 2022-06-28 Y. DELA CRUZ LEONARDO OROCEO -0000 AB UPDATE DWG. ADDED NOTE 5, UPDATE TOLERANCE ADDED AIRFLOW DIRECTION. 2022-10-25 LEONARDO OROCEO D.SAYAM -0000 AE 8184968 UPDATE DRAWING DUE TO NEW DESIGN AND LOCATION OF LBLA-MAIN 2023-05-02 Y.DELA CRUZ L.OROCEO SHEET REVISION HISTORY P/N SUFFIX REVISION ECO NO. REVISION DESCRIPTION DATE REVISED BY APPROVED BY 0000 AF 8186357 DIM 503.2±0.85 WAS 203.2±0.5(zK13) AH 8192022 ADDED NEW LABEL(zP9). 2024-01-11 LEONARDO OROCEO D. SAYAM AJ UPDATE NOTE4. UPDATE NOTES REFER TO NOTE 5 TO NOTE 4. 2024-01-16 LEONARDO OROCEO SHEET REVISION HISTORY P/N SUFFIX REVISION ECO NO. REVISION DESCRIPTION DATE REVISED BY APPROVED BY NOTES: 1. PARTS MUST BE COMPLETELY ASSEMBLED. 2. REFER TO BOM FOR UPDATED PART NUMBERS. 3. UNLESS OTHERWISE SPECIFIED, APPLIED TORQUE SHOULD BE PER WORKMANSHIP STANDARDS 920-000310-0000. 4. CUSTOMER MOUNTING -3 SIDES M4, BOTTOM ALSO INCLUDES 8-32 MOUNTING HOLES. SCREW MAX. PENETRATION IS 0.155"(4.0mm). SCREW MAX. TORQUE: 5 IN-LBS.(0.57 N-m). NORMAL AIRFLOW DIRECTION→ ←REVERSE AIRFLOW DIRECTION a a a a a a a a MANUFACTURER: DINKLE MPN: DT-7C-B14W-03 MANUFACTURER: ADAM TECHNOLOGIES MPN: MTJ-88TX1-FSE-PG-HFMANUFACTURER: MOLEX MPN: 43045-1401 4X CUSTOMER MOUNTING HOLES(a) RECOMMEND TO USE M4 SCREW. REFER TO NOTE 4 4X CUSTOMER MOUNTING HOLES(a) RECOMMEND TO USE M4 SCREW REFER TO NOTE 4 4X CUSTOMER MOUNTING HOLES(b) RECOMMEND TO USE 8-32 SCREW. REFER TO NOTE 4 4X CUSTOMER MOUNTING HOLES(a) RECOMMEND TO USE M4 SCREW. REFER TO NOTE 4 b a ab a abb 2X 33.05 ±0.2 2X 171.45 ±0.1 2X 171.45 ±0.1 4X 12.7 ±0.2 4X 177.8 ±0.1 2X 12.7 ±0.2 2X 38.1 ±0.12X 38.1 ±0.2 2X 64.05 ±0.22X 171.45 ±0.1 2X 171.45 ±0.1 283.4 ±0.5 203.2 ±0.85 63.5 ±0.85 2x 31.15 60.561.5 2X 12.7 ±0.1 64.05 ±0.2 2X 23.05 ±0.2 PROPRIETARY, CONFIDENTIAL and/or TRADE SECRET MATERIAL -- NOT OPEN TO PUBLIC. DO NOT SCAN, COPY OR DISTRIBUTE WITHOUT WRITTEN AUTHORIZATION FROM ADVANCED ENERGY INDUSTRIES,INC. Ⓒ2024 ADVANCED ENERGY INDUSTRIES,INC. ALL RIGHTS RESERVED This document, and the information it contains, are the property of ADVANCED ENERGY INDUSTRIES,INC. and are protected by law. Both must be held in strictest confidence at all times. No license or right to copy, use or disclose this document, or the information it contains, is granted either expressly or by implication. LEONARDO OROCEO D. SAYAM ASSEMBLY DRAWING PH L.OROCEO RELEASED 703-83-108-0001W-0000DOC,STD,DWG, NEOPOWER SERIES - CASE AJ 2024-01-16 EN NA NA

10 advancedenergy.com NP CASE INTERFACE NP08 Front Panel (Input, Signal Connector and LED Locations) Conditions AC OK LED DC OK LED AC Present, Outputs Inhibited (Case Global Inhibit), Case & Module bootloading ON BLINKING AC Present, Outputs Inhibited (Module Isolated Inhibit) ON OFF AC Present, Outputs Enabled ON ON Output OCP / OVP / Fan Fault ON OFF Case J1 Control & Signals Connector Pin # Signal Name Description Pin # Signal Name Description

1 G_ACOK_E Active HIGH signal, indicates the input

supply voltage is within operational range of the power supply

8 G_ACOK_C Active LOW signal, indicates the input

supply voltage is within specified limits

2 G_PGOOD_E Active HIGH signal, indicates the module

output is within regulation band

9 G_PGOOD_C Active LOW signal, indicates the main

output voltage is within specified limits

3 INH0/EN0 Global Inhibit / Enable Logic "0" signal

functions to turn-off or turn-on all modules simultaneously. Internally pulled-up to COMS_5V via 10k Ohm resistor

10 INH1/EN1 Global Inhibit / Enable Logic "1" signal

functions to turn-off or turn-on all modules simultaneously. Internally pulled-down to ISO_RTN via 4.7k Ohm resistor

4 ISO_RTN1 Isolated Supply Return 11 ISO_RTN1 Isolated Supply Return

5 5V_EXT Isolated 5 V Logic Supply 12 ISO_RTN1 Isolated Supply Return 6 5V_STBY 5 V Stand-by 13 5V_STBY_RTN 5 V Stand-by Return

7 ISO_RTN1 Isolated Supply Return 14 ISO_RTN1 Isolated Supply Return

Case J2 ConnectedPower Bus Pin # Signal Name Description Pin # Signal Name Description

1 RS485 A Communication lines for RS485

5 ISO_RTN1 Isolated Supply Return

2 RS485 B Communication lines for RS485

6 ISO_RTN1 Isolated Supply Return

3 ISO_RTN1 Isolated Supply Return 7 +5 V_Logic_Supply Isolated 5 V Logic Supply

4 ISO_RTN1 Isolated Supply Return 8 +5 V_Logic_Supply_

advancedenergy.com 11 NP MODULE INTERFACE Module J106 Signal Connector Pin # Signal Name Description

1 ISO_M_INHIBIT Isolated signal to inhibit the module output

2 ISO_M_INHIBIT_RTN Ground reference for ISO_M_INHIBIT signal

3 ISO_POWER_GOOD Isolated signal that indicates module output voltage or current is within regulation

4 ISO_POWER_GOOD_RTN Ground reference for ISO_POWER_GOOD signal

5 0-10_VI_PROG Used to control the output voltage by applying between 0 to 10 V to this pin. This pin will function when the module is configured to Analog Voltage Source (AVS) mode 6 0-5_VI_PROG Used to control the output voltage by applying between 0 to 5 V to this pin. This pin will function when the module is configured to Analog Voltage Source (AVS) mode 7 VI_TRIM_EN# Connecting this pin to D_RTN will enable the trimmer potentiometer. This pin will function when the module is configured to Digital Voltage Source (DVS) or Digital Current Source (DCS) modes

8 D_RTN Ground reference for 0-10_VI_PROG & 0-5_VI_PROG signals

9 ISHARE 0.4 to 8.4 V voltage signal for active current sharing

10 ISHARE_RTN Ground reference for ISHARE signal

11 RS+ Signal used for module output voltage positive remote sense

12 RS- Signal used for module output voltage negative remote sense

Module Inhibited, Module Bootloading Blinking Green Module Enabled Solid Green Module Faulted Solid Red Module Faulted Solid Amber NP08 Rear View Output, Signal Connectors and LEDs LED

ENG-IHP-235-01 02.04.24 For international contact information, visit advancedenergy .com. powersales@aei.com (Sales Support) productsupport.ep@aei.com (Technical Support) +1 888 412 7832 ABOUT ADVANCED ENERGY Advanced Energy (AE) has devoted more than three decades to perfecting power for its global customers. AE designs and manufactures highly engineered, precision power conversion, measurement and control solutions for mission-critical applications and processes. Our products enable customer innovation in complex applications for a wide range of industries including semiconductor equipment, industrial, manufacturing, telecommunications, data center computing, and medical. With deep applications know-how and responsive service and support across the globe, we build collaborative partnerships to meet rapid technological developments, propel growth for our customers, and innovate the future of power. Specifications are subject to change without notice. Not responsible for errors or omissions. ©2024 Advanced Energy Industries, Inc. All rights reserved. Advanced Energy®, AE® and Artesyn™ are U.S. trademarks of Advanced Energy Industries, Inc. TRUST